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Effect of Cellulose Nanocrystals (CNC) Particle Morphology on Dispersion and Rheological and Mechanical Properties of Polypropylene/CNC Nanocomposites

机译:纤维素纳米晶体(CNC)颗粒形态对聚丙烯/ CNC纳米复合材料分散性和流变力学性能的影响

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摘要

Polypropylene (PP) nanocomposites containing spray-dried cellulose nanocrystals (CNC), freeze-dried CNC, and spray-freeze-dried CNC (CNCSFD) were prepared via melt mixing in an internal batch mixer. Polarized light, scanning electron, and atomic force microscopy showed significantly better dispersion of CNCSFD in PP/CNC nanocomposites compared with the spray-dried and freeze-dried CNCs. Rheological measurements, including linear and nonlinear viscoelastic tests, were performed on PP/CNC samples. The microscopy results were supported by small-amplitude oscillatory shear tests, which showed substantial rises in the magnitudes of key rheological parameters of PP samples containing CNCSFD. Steady-shear results revealed a strong shear thinning behavior of PP samples containing CNCSFD. Moreover, PP melts containing CNCSFD exhibited a yield stress. The magnitude of the yield stress and the degree of shear thinning behavior increased with CNCSFD concentration. It was found that CNCSFD agglomerates with a weblike structure were more effective in modifying the rheological properties. This effect was attributed to better dispersion of the agglomerates with the weblike structure. Dynamic mechanical analysis showed considerable improvement in the modulus of samples containing CNCSFD agglomerates. The percolation mechanical model with modified volume percolation threshold and filler network strength values and the Halpin-Kardos model were used to fit the experimental results.
机译:通过在内部间歇式混合器中熔融混合来制备包含喷雾干燥的纤维素纳米晶体(CNC),冷冻干燥的CNC和喷雾冷冻干燥的CNC(CNCSFD)的聚丙烯(PP)纳米复合材料。与喷雾干燥和冷冻干燥的CNCs相比,偏振光,扫描电子和原子力显微镜显示CNCSFD在PP / CNC纳米复合材料中的分散性更好。在PP / CNC样品上进行了流变学测量,包括线性和非线性粘弹性测试。显微结果得到了小振幅振荡剪切试验的支持,该试验表明含有CNCSFD的PP样品的关键流变参数的幅度大大提高。稳定的剪切结果表明,含有CNCSFD的PP样品具有很强的剪切稀化行为。此外,含有CNCSFD的PP熔体表现出屈服应力。屈服应力的大小和剪切稀化行为的程度随CNCSFD浓度的增加而增加。发现具有网状结构的CNCFSFD附聚物在改变流变性质方面更有效。该效果归因于附聚物具有网状结构的更好的分散。动态力学分析表明,含有CNCSFD附聚物的样品的模量有了显着改善。修改后的体积渗流阈值和填料网络强度值的渗流力学模型和Halpin-Kardos模型用于拟合实验结果。

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